Ribosome profiling reveals the effects of nitrogen application translational regulation of yield recovery after abrupt drought-flood alternation in rice

核糖体分析 交替(语言学) 大洪水 核糖体 生物 基因 平动调节 编码区 非翻译区 核糖核酸 翻译(生物学) 信使核糖核酸 遗传学 地理 语言学 哲学 考古
作者
Qiangqiang Xiong,Lei Zhong,Jie Du,Changlan Zhu,Xiaosong Peng,Xiaopeng He,Junru Fu,Linjuan Ouyang,Jianmin Bian,Lifang Hu,Xiaotang Sun,Jie Xu,Dahu Zhou,Yicong Cai,Haihui Fu,Haohua He,Xiaorong Chen
出处
期刊:Plant Physiology and Biochemistry [Elsevier BV]
卷期号:155: 42-58 被引量:36
标识
DOI:10.1016/j.plaphy.2020.07.021
摘要

Abrupt drought-flood alternation is a frequent meteorological disaster during the summer in Southern China. The study of physiological and translation mechanisms of rice yield recovery after abrupt drought-flood alternation has great potential benefits in field production. Our results showed that yield recovery upon nitrogen (N) application after abrupt drought-flood alternation was due to the increase in effective panicle numbers per plant. The N application resulted in the regulation of physiological and biochemical as well as growth development processes, which led to a rapid growth recovery effect after abrupt drought-flood alternation stress in rice. Using ribosome profiling combined with RNA sequencing (RNA-seq) technology, the interactions between transcription and translation for N application after abrupt drought-flood alternation were analyzed. It was found that a small proportion of response genes were shared at the transcriptional and translational levels, that is, 14% of the expressed genes were upregulated and 6.6% downregulated. Further analysis revealed that the translation efficiency (TE) of the genes was influenced by their sequence characteristics, including their GC content, coding sequence length and normalized minimal free energy. Compared with the number of untranslated upstream open reading frames (uORFs), the increased number of translated uORFs promoted the improvement of TE. The TE of the uORFs for N application was lower than the control without N application after abrupt drought-flood alternation. This study characterizes the translational regulatory pattern in response to N application after abrupt drought-flood alternation stress.
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